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Identification of a novel cancer stem cell subpopulation that promotes progression of human fatal renal cell carcinoma by single-cell RNA-seq analysis

Background: Cancer stem cells (CSCs) are biologically characterized by self-renewal, multi-directional differentiation and infinite proliferation, inducing anti-tumor drug resistance and metastasis. In the present study, we attempted to depict the baseline landscape of CSC-mediated biological proper...

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Autores principales: Pan, Xiu-wu, Zhang, Hao, Xu, Da, Chen, Jia-xin, Chen, Wen-jin, Gan, Si-shun, Qu, Fa-jun, Chu, Chuan-min, Cao, Jian-wei, Fan, Ying-hui, Song, Xu, Ye, Jian-qing, Zhou, Wang, Cui, Xin-gang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7645996/
https://www.ncbi.nlm.nih.gov/pubmed/33162821
http://dx.doi.org/10.7150/ijbs.46645
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author Pan, Xiu-wu
Zhang, Hao
Xu, Da
Chen, Jia-xin
Chen, Wen-jin
Gan, Si-shun
Qu, Fa-jun
Chu, Chuan-min
Cao, Jian-wei
Fan, Ying-hui
Song, Xu
Ye, Jian-qing
Zhou, Wang
Cui, Xin-gang
author_facet Pan, Xiu-wu
Zhang, Hao
Xu, Da
Chen, Jia-xin
Chen, Wen-jin
Gan, Si-shun
Qu, Fa-jun
Chu, Chuan-min
Cao, Jian-wei
Fan, Ying-hui
Song, Xu
Ye, Jian-qing
Zhou, Wang
Cui, Xin-gang
author_sort Pan, Xiu-wu
collection PubMed
description Background: Cancer stem cells (CSCs) are biologically characterized by self-renewal, multi-directional differentiation and infinite proliferation, inducing anti-tumor drug resistance and metastasis. In the present study, we attempted to depict the baseline landscape of CSC-mediated biological properties, knowing that it is vital for tumor evolution, anti-tumor drug selection and drug resistance against fatal malignancy. Methods: We performed single-cell RNA sequencing (scRNA-seq) analysis in 15208 cells from a pair of primary and metastatic sites of collecting duct renal cell carcinoma (CDRCC). Cell subpopulations were identified and characterized by t-SNE, RNA velocity, monocle and other computational methods. Statistical analysis of all single-cell sequencing data was performed in R and Python. Results: A CSC population of 1068 cells was identified and characterized, showing excellent differentiation and self-renewal properties. These CSCs positioned as a center of the differentiation process and transformed into CDRCC primary and metastatic cells in spatial and temporal order, and played a pivotal role in promoting the bone destruction process with a positive feedback loop in the bone metastasis microenvironment. In addition, CSC-specific marker genes BIRC5, PTTG1, CENPF and CDKN3 were observed to be correlated with poor prognosis of CDRCC. Finally, we pinpointed that PARP, PIGF, HDAC2, and FGFR inhibitors for effectively targeting CSCs may be the potential therapeutic strategies for CDRCC. Conclusion: The results of the present study may shed new light on the identification of CSCs, and help further understand the mechanism underlying drug resistance, differentiation and metastasis in human CDRCC.
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spelling pubmed-76459962020-11-06 Identification of a novel cancer stem cell subpopulation that promotes progression of human fatal renal cell carcinoma by single-cell RNA-seq analysis Pan, Xiu-wu Zhang, Hao Xu, Da Chen, Jia-xin Chen, Wen-jin Gan, Si-shun Qu, Fa-jun Chu, Chuan-min Cao, Jian-wei Fan, Ying-hui Song, Xu Ye, Jian-qing Zhou, Wang Cui, Xin-gang Int J Biol Sci Research Paper Background: Cancer stem cells (CSCs) are biologically characterized by self-renewal, multi-directional differentiation and infinite proliferation, inducing anti-tumor drug resistance and metastasis. In the present study, we attempted to depict the baseline landscape of CSC-mediated biological properties, knowing that it is vital for tumor evolution, anti-tumor drug selection and drug resistance against fatal malignancy. Methods: We performed single-cell RNA sequencing (scRNA-seq) analysis in 15208 cells from a pair of primary and metastatic sites of collecting duct renal cell carcinoma (CDRCC). Cell subpopulations were identified and characterized by t-SNE, RNA velocity, monocle and other computational methods. Statistical analysis of all single-cell sequencing data was performed in R and Python. Results: A CSC population of 1068 cells was identified and characterized, showing excellent differentiation and self-renewal properties. These CSCs positioned as a center of the differentiation process and transformed into CDRCC primary and metastatic cells in spatial and temporal order, and played a pivotal role in promoting the bone destruction process with a positive feedback loop in the bone metastasis microenvironment. In addition, CSC-specific marker genes BIRC5, PTTG1, CENPF and CDKN3 were observed to be correlated with poor prognosis of CDRCC. Finally, we pinpointed that PARP, PIGF, HDAC2, and FGFR inhibitors for effectively targeting CSCs may be the potential therapeutic strategies for CDRCC. Conclusion: The results of the present study may shed new light on the identification of CSCs, and help further understand the mechanism underlying drug resistance, differentiation and metastasis in human CDRCC. Ivyspring International Publisher 2020-10-17 /pmc/articles/PMC7645996/ /pubmed/33162821 http://dx.doi.org/10.7150/ijbs.46645 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Pan, Xiu-wu
Zhang, Hao
Xu, Da
Chen, Jia-xin
Chen, Wen-jin
Gan, Si-shun
Qu, Fa-jun
Chu, Chuan-min
Cao, Jian-wei
Fan, Ying-hui
Song, Xu
Ye, Jian-qing
Zhou, Wang
Cui, Xin-gang
Identification of a novel cancer stem cell subpopulation that promotes progression of human fatal renal cell carcinoma by single-cell RNA-seq analysis
title Identification of a novel cancer stem cell subpopulation that promotes progression of human fatal renal cell carcinoma by single-cell RNA-seq analysis
title_full Identification of a novel cancer stem cell subpopulation that promotes progression of human fatal renal cell carcinoma by single-cell RNA-seq analysis
title_fullStr Identification of a novel cancer stem cell subpopulation that promotes progression of human fatal renal cell carcinoma by single-cell RNA-seq analysis
title_full_unstemmed Identification of a novel cancer stem cell subpopulation that promotes progression of human fatal renal cell carcinoma by single-cell RNA-seq analysis
title_short Identification of a novel cancer stem cell subpopulation that promotes progression of human fatal renal cell carcinoma by single-cell RNA-seq analysis
title_sort identification of a novel cancer stem cell subpopulation that promotes progression of human fatal renal cell carcinoma by single-cell rna-seq analysis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7645996/
https://www.ncbi.nlm.nih.gov/pubmed/33162821
http://dx.doi.org/10.7150/ijbs.46645
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